1) self-baking carbon brick
自焙碳砖
1.
On the basis of the thermal flow intensity temperature distribution in the hearth and slag and liquid iron temperature,a prediction method has been developed to estimate the hearth erosion through simulating the temperature distribution of the hearth with self-baking carbon brick and ceramic brickwork as a lining by means of Kriging's method.
以鞍钢7号高炉自焙碳砖陶瓷砌体复合炉缸的热流强度、炉缸内各测温点和渣铁温度为依据,利用最小误差回归分析方法提出了炉缸侵蚀状态的预测方法。
2.
Brittleness layer formed on self-baking carbon brick under certain conditions is proved by the application practice, which is resulted from the double acting of alkali metal erosion and hot metal permeation.
高炉自焙碳砖应用的实践证明,自焙碳砖在一定条件下也能形成脆化层,是碱金属侵蚀和渗铁的双重作用。
2) partially graphitized self baking carbon brick
自焙炭砖
1.
An experimental study has been made of graphitizing process of partially graphitized self baking carbon brick (PGSBCB) under different experimental conditions.
在不同的自焙条件下,实验研究了鞍钢7#高炉用自焙炭砖的石墨化过程。
3) SBCB
自焙碳块
1.
Specimens of the SBCB with different graphitizing degree were obtained in laboratory Effects of graphitizing degree on the properties of the SBCB, including structure, thermal conductivity, thermal expansivity, resistance to thermal shock, resistance to erosion of molten iron and slag, were studied respectivel
在实验室制备了不同石墨化度的自焙碳块 ,并研究了石墨化度对自焙碳块的结构性质、高温冶金性能 (包括恒压比热容、热扩散率、导热性、热膨胀性、抗热震性 )、抗铁水和熔渣侵蚀性能及铁水渗透的影响。
4) technique of self roasted carbon
自焙炭砖-陶瓷杯技术
6) half-baked brick
半焙烧砖
补充资料:80kA侧插棒自焙阳极铝电解槽(兰州连城铝厂)
80kA侧插棒自焙阳极铝电解槽(兰州连城铝厂)
目 SOha侧插棒自焙阳极铝电解槽(兰州连城铝厂、
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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